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缺氧对高传能线密度辐射诱导的酵母损伤及其修复的影响

Modification of high LET radiation-induced damage and its repair in yeast by hypoxia.

作者信息

Subrahmanyam P, Rao B S, Reddy N M, Murthy M S, Madhvanath U

出版信息

Int J Radiat Biol Relat Stud Phys Chem Med. 1979 Nov;36(5):479-88. doi: 10.1080/09553007914551271.

Abstract

The lethal response of a diploid yeast strain BZ34 to densely ionizing radiations from the reaction 10B(n, alpha)7 Li was studied. The values for relative biological effectiveness (r.b.e.) and oxygen enhancement ratio (o.e.r.) for this radiation compare favourably with the data obtained with charged particles on the same strain of yeast. Recovery from potentially lethal damage was also studied by post-irradiation holding under non-nutrient conditions. In order to understand the role of oxygen in the recovery process, the investigation covered the following treatment regimens: (a) aerobic irradiation and aerobic holding (A-A), (b) aerobic irradiation and hypoxic holding (A-H), (c) hypoxic irradiation and hypoxic holding (H-H) and (d) hypoxic irradiation and aerobic holding (H-A). It has been found that the presence of oxygen is essential for recovery from the damage induced by both gamma rays and high linear energy transfer (LET) radiations. The extent of recovery was larger for gamma-induced damage than for damage induced by high LET radiation (alpha + 7Li) for the A-A condition. In the H-H condition, while only a slight recovery was seen for gamma-induced damage, it was totally absent for high LET damage. For the modality A-H, it was found that there is not recovery from the sparsely ionising gamma radiation-induced damage. The implications of these results for the treatment of malignant tumours by radiotherapy are briefly discussed.

摘要

研究了二倍体酵母菌株BZ34对反应10B(n,α)7Li产生的密集电离辐射的致死反应。该辐射的相对生物效应(r.b.e.)和氧增强比(o.e.r.)值与用相同酵母菌株的带电粒子获得的数据相比具有优势。还通过在无营养条件下辐照后保持来研究潜在致死损伤的恢复情况。为了了解氧在恢复过程中的作用,研究涵盖了以下处理方案:(a) 有氧辐照和有氧保持(A-A),(b) 有氧辐照和低氧保持(A-H),(c) 低氧辐照和低氧保持(H-H),以及(d) 低氧辐照和有氧保持(H-A)。已发现氧的存在对于从γ射线和高传能线密度(LET)辐射诱导的损伤中恢复至关重要。对于A-A条件,γ射线诱导的损伤的恢复程度大于高LET辐射(α + 7Li)诱导的损伤。在H-H条件下,虽然γ射线诱导的损伤仅出现轻微恢复,但高LET损伤则完全没有恢复。对于A-H模式,发现对于稀疏电离的γ辐射诱导的损伤没有恢复。简要讨论了这些结果对放射治疗恶性肿瘤的意义。

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